Open Journal of Applied Biosensor

Open Journal of Applied Biosensor

ISSN Print: 2168-5401
ISSN Online: 2168-5398
www.scirp.org/journal/ojab
E-mail: ojab@scirp.org
"Urea Amperometric Biosensors Based on Nanostructured Polypyrrole and Poly Ortho-Phenylenediamine"
written by Svetla Ivanova, Yavor Ivanov, Tzonka Godjevargova,
published by Open Journal of Applied Biosensor, Vol.2 No.1, 2013
has been cited by the following article(s):
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[4] Improving the abrasion resistance of pearlitic steels by high-temperature hardening and cold treatment
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[5] Low cost and eco-friendly nanoparticles from cockle shells as a potential matrix for the immobilisation of urease enzyme
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[6] Functional Biosensing Platform for Urea Detection: Copolymer of Fc-Substituted 2, 5-di (thienyl) pyrrole and 3, 4-ethylenedioxythiophene
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[8] Formation of Dissipative Structure of Metastable Austenite for Raising the Abrasive Wear Resistance of Steels of Pearlitic and Ledeburitic Classes
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[9] Heat treatment of wear-resistant cast iron at high and low temperatures
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[10] Polypyrrole/MWCNT nanobiocomposite based electrochemical urease biosensor
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[11] The effect of heat treatment on the ledeburitic class alloy abrasive wear-resistance
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[12] Advances in nanomaterial application in enzyme-based electrochemical biosensors: a review
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[13] Conducting Polymers, Hydrogels and Their Composites: Preparation, Properties and Bioapplications
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[14] Heat treatment forming a dissipative metal base in wear-resistant chromium-alloyed cast iron
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[15] Electrochemical oxidation-reduction and determination of urea at enzyme free PPY-GO electrode
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[16] LED based portable optical biosensor for measurement of serum urea levels using urease immobilized agarose-guar gum composite film
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[17] Urea Amperometric biosensor based on entrapment immobilization of urease onto a nanostructured polypyrrol and multi-walled carbon nanotube
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[18] Potentiometric Biosensors Based on Metal Oxide Nanostructures
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[19] CONTROLLING THE STRUCTURE OF WEAR-RESISTANT STEELS 150KhNML AND Kh12MFL BY HIGH-TEMPERATURE QUENCHING AND COLD TREATMENT
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[20] A Urea Potentiometric Biosensor Based on a Thiophene Copolymer
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[21] Fabricating Long Shelf Life Potentiometric Urea Biosensors Using Modified MWCNTs on Screen Printed Electrodes
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[22] Imobilização de urease com a quitosana pelo método de gotejamento sobre um eletrodo transdutor amperométrico
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[23] Formation of Structure of Wear-Resistant Steels 150KhNML and Kh12MFL Upon Quenching
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[24] Current trends in redox polymers for energy and medicine
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[25] Deposição, caracterização e aplicação de filmes nanoestruturados de ZnO: biossensores de glicose e ureia
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[26] FABRICATION OF POLYPYRROLE/MWCNT NANOCOMPOSITE FILMS AS LACTATE BIOSENSOR FOR SWEAT ANALYSIS
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[27] Urease immobilized polypyrrole/multi-walled carbon nanotubes composite biosensor for heavy metal ions detection
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[28] Zirconia-poly (propylene imine) dendrimer nanocomposite based electrochemical urea biosensor
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[29] INSTITUTO DE FíSICA
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[30] Evaluation of Immobilization Techniques for the Fabrication of Nanomaterial-Based Amperometric Glucose Biosensors
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[31] CONTROLLING THE STRUCTURE OF WEAR-RESISTANT STEELS 150KhNML AND Kh12MFL BY HIGH-TEMPERATURE QUENCHING AND COLD …
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